Consider the following feedback control system. The plant transfer function is: 1 as+b P(s) = Consider a controller C(s) The desired closed-loop poles are at p1 = s2+3s+1 cs+d -30, P2.3 = -3±j4. (a)...


Controls of systems problem - Mechanical Engineering


Consider the following feedback control system. The plant transfer function is:<br>1<br>as+b<br>P(s) =<br>Consider a controller C(s)<br>The desired closed-loop poles are at p1 =<br>s2+3s+1<br>cs+d<br>-30, P2.3 = -3±j4.<br>(a) What is the expression of the actual closed-loop characteristic equation obtained based on P(s) and<br>C(s)?<br>(b) What is the expression of the desired closed-loop characteristic equation obtained based on the<br>desired closed-loop pole locations pį and p2,3?<br>(c) What are the values of a, b, c, and d such that the closed-loop poles are at the desired locations?<br>R(s)<br>C(s)<br>P(s)<br>Y(s)<br>Controller<br>Plant<br>

Extracted text: Consider the following feedback control system. The plant transfer function is: 1 as+b P(s) = Consider a controller C(s) The desired closed-loop poles are at p1 = s2+3s+1 cs+d -30, P2.3 = -3±j4. (a) What is the expression of the actual closed-loop characteristic equation obtained based on P(s) and C(s)? (b) What is the expression of the desired closed-loop characteristic equation obtained based on the desired closed-loop pole locations pį and p2,3? (c) What are the values of a, b, c, and d such that the closed-loop poles are at the desired locations? R(s) C(s) P(s) Y(s) Controller Plant

Jun 11, 2022
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